nary-weighted values of each mask bit. The Alarm Status Event Register is de-
scribed in Section 8.4.11.9, STATus:ALARm?. The following example causes
the Alarm Status Bit in the Status Byte Register to be set when a power failure
alarm has been triggered.
Example: STAT:ALAR:ENAB 32
Response: 32
8.4.11.13
STATus:MEASure?
This command reads and clears the Measure Status Event Register. The value
returned indicates the condition of each of the eight bits of the register by add-
ing the binary-weighted values of each bit. The meaning of each bit, when set
(1), is as follows where 0 is the least significant and 7 is the most significant:
Bit 0
Channel 1 temperature measure bit.
Bit 1
Channel 1 humidity measure bit.
Bit 2
Channel 2 temperature measure bit.
Bit 3
Channel 2 humidity measure bit.
Bit 4
Channel 1 sensor attached/detached.
Bit 5
Channel 2 sensor attached/detached.
Bit 6
Not used.
Bit 7
Not used.
Example: STAT:MEAS?
Response: 3
8.4.11.14
STATus:MEASure:CONDition?
This command reads the Measurement Status Condition Register. Reading this
register does not affect it. The value returned indicates the condition of each of
the eight bits of the register by adding the binary-weighted values of each bit.
The meaning of each bit, when set (1), is as follows where 0 is the least signifi-
cant and 7 is the most significant:
Bit 0
Channel 1 temperature measure bit.
Bit 1
Channel 1 humidity measure bit.
Bit 2
Channel 2 temperature measure bit.
Bit 3
Channel 2 humidity measure bit.
Bit 4
Channel 1 sensor attached.
Bit 5
Channel 2 sensor attached.
132
Hart Scientific
8 Digital Communications Interface
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